Shakeel Muhammad, Rodriguez Alicia, Tahir Urfa Bin, Jin Fengliang
Key Laboratory of Bio-Pesticide Innovation and Application of Guangdong Province, College of Agriculture, South China Agricultural University, Guangzhou, China.
Faculty of Veterinary Science, Food Hygiene and Safety, Meat and Meat Products Research Institute, University of Extremadura, Avda. de la Universidad, s/n, 10003, Cáceres, Spain.
Biotechnol Lett. 2018 Feb;40(2):227-236. doi: 10.1007/s10529-017-2465-4. Epub 2017 Nov 9.
Whenever gene expression is being examined, it is essential that a normalization process is carried out to eliminate non-biological variations. The use of reference genes, such as glyceraldehyde-3-phosphate dehydrogenase, actin, and ribosomal protein genes, is the usual method of choice for normalizing gene expression. Although reference genes are used to normalize target gene expression, a major problem is that the stability of these genes differs among tissues, developmental stages, species, and responses to abiotic factors. Therefore, the use and validation of multiple reference genes are required. This review discusses the reasons that why RT-qPCR has become the preferred method for validating results of gene expression profiles, the use of specific and non-specific dyes and the importance of use of primers and probes for qPCR as well as to discuss several statistical algorithms developed to help the validation of potential reference genes. The conflicts arising in the use of classical reference genes in gene normalization and their replacement with novel references are also discussed by citing the high stability and low stability of classical and novel reference genes under various biotic and abiotic experimental conditions by employing various methods applied for the reference genes amplification.
每当检测基因表达时,进行标准化处理以消除非生物学变异至关重要。使用诸如甘油醛-3-磷酸脱氢酶、肌动蛋白和核糖体蛋白基因等内参基因,是标准化基因表达通常的选择方法。尽管内参基因用于标准化靶基因表达,但一个主要问题是这些基因的稳定性在不同组织、发育阶段、物种以及对非生物因子的反应中存在差异。因此,需要使用和验证多个内参基因。本综述讨论了RT-qPCR成为验证基因表达谱结果的首选方法的原因、特异性和非特异性染料的使用以及qPCR引物和探针使用的重要性,还讨论了为帮助验证潜在内参基因而开发的几种统计算法。通过采用用于内参基因扩增的各种方法,引用经典和新型内参基因在各种生物和非生物实验条件下的高稳定性和低稳定性,还讨论了在基因标准化中使用经典内参基因所产生的冲突以及用新型内参基因替代它们的情况。